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Stratasys® ABS-M30
Categories: Polymer; 3D Printing/Additive Manufacturing Polymer; Thermoplastic; ABS Polymer

Material Notes: ABS-M30™ filament combines the design freedom of FDM® technology with the versatility and capability of ABS (acrylonitrile butadiene styrene). ABS is characterized by its strength and toughness, while being lightweight and resilient, suitable for most general-purpose 3D printing use cases. ABS-M30™ is up to 25 to 70 percent stronger than standard ABS and is an ideal material for conceptual modeling, functional prototyping, manufacturing tools and end-use-parts. ABS-M30 has greater tensile, impact and flexural strength than standard ABS. Layer bonding is significantly stronger than that of standard ABS, for a more durable part. This results in more realistic functional tests and higher quality parts for end use. ABS-M30 parts are stronger, smoother and have better feature detail. ABS-M30 runs the Xtend 500 Fortus Plus option, which enables more than 400 hours of unattended build time.

Information provided by Stratasys®

Vendors:
Proto3000 provides design tools, 3D printers, additive manufacturing processes, metrology technologies, high-performance materials, and part-finishing automation. Our ISO 9001:2015 additive manufacturing production facility offers 3D printing services, rapid prototyping services, and end-part production with HP MultiJet Fusion (MJF), FDM, SLA, SLS, Polyjet, DLP, metal binder jetting, BMD, and DMLS.

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Physical PropertiesOriginal ValueComments
Specific Gravity 1.05 g/ccXY, XZ/ZX Orientations; ASTM D257
 
Mechanical PropertiesOriginal ValueComments
Tensile Strength at Break 25.0 MPaZX Orientation; ASTM D638
 28.0 MPaXZ Orientation; ASTM D638
Tensile Strength, Yield 30.0 MPaXZ Orientation; ASTM D638
 30.0 MPaZX Orientation; ASTM D638
Elongation at Break 1.8 %ZX Orientation; ASTM D638
 8.0 %XZ Orientation; ASTM D638
Elongation at Yield 1.7 %ZX Orientation; ASTM D638
 1.78 %XZ Orientation; ASTM D638
Modulus of Elasticity 2.30 GPaZX Orientation; ASTM D638
 2.40 GPaXZ Orientation; ASTM D638
Flexural Strength 50.0 MPaZX Orientation; ASTM D790, Procedure A
 60.0 MPa
@Strain 5.0 %
XZ Orientation; ASTM D790, Procedure A
Flexural Modulus 1.96 GPaZX Orientation; ASTM D790, Procedure A
 2.22 GPaXZ Orientation; ASTM D790, Procedure A
Flexural Strain at Break 3.4 %ZX Orientation; ASTM D790, Procedure A
Compressive Yield Strength 90.0 MPaXZ Orientation; ASTM D695
 210 MPaZX Orientation; ASTM D695
Compressive Modulus 2.16 GPaZX Orientation; ASTM D695
 2.20 GPaXZ Orientation; ASTM D695
Izod Impact, Notched 30.0 J/mZX Orientation; ASTM D256, ASTM D4812
 100 J/mXZ Orientation; ASTM D256, ASTM D4812
Izod Impact, Unnotched 100 J/mZX Orientation; ASTM D256, ASTM D4812
 290 J/mXZ Orientation; ASTM D256, ASTM D4812
 
Electrical PropertiesOriginal ValueComments
Volume Resistivity >= 6.78e+14 ohm-cmXY, XZ/ZX Orientations; ASTM D257
Dielectric Constant 2.49
@Frequency 2.00e+6 Hz
XY Orientation; ASTM D150
 2.61
@Frequency 2.00e+6 Hz
XZ/ZX Orientation; ASTM D150
 2.64
@Frequency 1000 Hz
XY Orientation; ASTM D150
 2.78
@Frequency 1000 Hz
XZ/ZX Orientation; ASTM D150
Dissipation Factor 0.0030
@Frequency 1000 Hz
XY Orientation; ASTM D150
 0.0040
@Frequency 2.00e+6 Hz
XY Orientation; ASTM D150
 0.0050
@Frequency 1000 Hz
XZ/ZX Orientation; ASTM D150
 0.0070
@Frequency 2.00e+6 Hz
XZ/ZX Orientation; ASTM D150
 
Thermal PropertiesOriginal ValueComments
CTE, linear 60.0 µm/m-°C
@Temperature 40.0 - 140 °C
XY, XZ/ZX Orientations; ASTM E831
Deflection Temperature at 0.46 MPa (66 psi) 104 °CXY, XZ/ZX Orientations; ASTM D648 Method B
Deflection Temperature at 1.8 MPa (264 psi) 100 °CXY, XZ/ZX Orientations; ASTM D648 Method B
Glass Transition Temp, Tg 105 °CInflection Point, XY, XZ/ZX; ASTM D7426

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